Department of Plant Biology, Institute of Biology, University of Campinas (UNICAMP), Campinas, Brazil.
Federal Institute of Education, Science and Technology, South of Minas Gerais (IFSULDEMINAS), Inconfidentes, Brazil.
Photochem Photobiol. 2024 Jan-Feb;100(1):190-203. doi: 10.1111/php.13830. Epub 2023 Jul 3.
Photodynamic therapy (PDT) has been used for various purposes, including as an antitumor resource in a noninvasive therapy with minimal side effects. Sinningia magnifica (Otto & A. Dietr.) Wiehler is a rupicolous plant found in rock crevices in Brazilian tropical forests. Initial studies indicate the presence of phenolic glycosides and anthraquinones in species of the genus Sinningia (Generiaceae family). It is known that anthraquinones are natural photosensitizers with potential PDT applications. This led us to investigate the potential compounds of S. magnifica for use as a natural photosensitizer against the melanoma (SK-MEL-103) and the prostate cancer (PC-3) cell lines in a bioguided study. Our results showed that singlet oxygen production by the 1,3-DPBF photodegradation assay greatly increased in the presence of crude extract and fractions. The biological activity evaluation showed photodynamic action against melanoma cell line SK-MEL-103 and prostate cell line PC-3. These results suggest the presence of potential photosensitizing substances, as demonstrated in this in vitro antitumor PDT study by the naphthoquinones Dunniol and 7-hydroxy-6-methoxy-α-dunnione for the first time. Naphthoquinones, anthraquinones and phenolic compounds were identified in the crude extract by UHPLC-MS/MS analysis, motivating us to continue with the bioguided phytochemical study aiming to discover more photochemically bioactive substances in Gesneriaceae plants.
光动力疗法(PDT)已被用于多种用途,包括作为一种非侵入性治疗的抗肿瘤资源,副作用极小。Sinningia magnifica(Otto & A. Dietr.)Wiehler 是一种在巴西热带雨林的岩石裂缝中发现的岩生植物。初步研究表明,Sinningia 属(爵床科)的某些物种中存在酚糖苷和蒽醌。已知蒽醌是具有潜在 PDT 应用的天然光敏剂。这促使我们研究 S. magnifica 的潜在化合物,作为一种天然光敏剂,用于生物导向研究中针对黑色素瘤(SK-MEL-103)和前列腺癌(PC-3)细胞系的 PDT。我们的结果表明,在存在粗提取物和馏分的情况下,1,3-DPBF 光降解测定中的单线态氧产生大大增加。生物活性评价显示对黑色素瘤细胞系 SK-MEL-103 和前列腺细胞系 PC-3 具有光动力作用。这些结果表明存在潜在的光敏物质,正如首次在这项体外抗肿瘤 PDT 研究中通过萘醌 Dunniol 和 7-羟基-6-甲氧基-α-二氢萘醌所证明的那样。UHPLC-MS/MS 分析鉴定了粗提取物中的萘醌、蒽醌和酚类化合物,这促使我们继续进行生物导向的植物化学研究,旨在发现爵床科植物中更多具有光化学生物活性的物质。